
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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![08:32 ☑
< Block Test Assign...
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Q :
4. Solutions to this assignment should be submitted via Google Classroom by the due date.
5. No late submissions will be accepted.
6. A cover page should accompany your submission.
7. You will be penalized if you fail to adhere to instructions.
MARK ALLOCATION
Question
Question 1
Question 2
Marks
15
10
Question 1
a) Determine Thévenin's equivalent circuit for the circuit shown in Figure 1. given that, is the
load of interest.
1000
480 F
[15]
Question 2
10/45° V
1 kHz
33002
ли
22002
Figure 1
ZL
75 mH
Given the circuit of an ideal OPAMP, as shown in Figure 2, determine the output voltage phasor
V
[10]
V 2.50/30.0° V
f=1.00 kHz
1.00 ΚΩ
Figure 2
470 nF
OV
2/3
3/3](https://content.bartleby.com/qna-images/question/1464bcb2-cbfb-452b-a5d8-81a939d1a87b/f88648cc-922f-4e5e-87a2-e9e18d58e58a/7od9t4t_thumbnail.jpeg)
Transcribed Image Text:08:32 ☑
< Block Test Assign...
16%
Q :
4. Solutions to this assignment should be submitted via Google Classroom by the due date.
5. No late submissions will be accepted.
6. A cover page should accompany your submission.
7. You will be penalized if you fail to adhere to instructions.
MARK ALLOCATION
Question
Question 1
Question 2
Marks
15
10
Question 1
a) Determine Thévenin's equivalent circuit for the circuit shown in Figure 1. given that, is the
load of interest.
1000
480 F
[15]
Question 2
10/45° V
1 kHz
33002
ли
22002
Figure 1
ZL
75 mH
Given the circuit of an ideal OPAMP, as shown in Figure 2, determine the output voltage phasor
V
[10]
V 2.50/30.0° V
f=1.00 kHz
1.00 ΚΩ
Figure 2
470 nF
OV
2/3
3/3
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